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首页> 外文期刊>Journal of propulsion and power >Reactive Composite Boron-Magnesium Powders Prepared by Mechanical Milling
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Reactive Composite Boron-Magnesium Powders Prepared by Mechanical Milling

机译:机械球磨制备反应性硼镁复合粉

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摘要

Composite reactive material powders combining boron with 40 mass % of magnesium are prepared by mechanical milling of elemental boron and magnesium powders. Commercial boron is washed with acetonitrile to remove surface boron oxide, which can react with magnesium during milling. Thermogravimetric measurements showed two oxidation steps. X-ray diffraction analysis of partially oxidized samples showed that selective oxidation of magnesium occurred during the first step. It was followed by oxidation of boron during the second step. Prepared composite powders were ignited using an electrically heated filament, by electric spark, and in constant-volume explosion tests. Ignition is caused by selective oxidation of magnesium. Ignition temperature of the composite powders obtained in heated filament tests was lower than that measured for the pure magnesium. A faster initiation by electric spark was observed for powders prepared using washed boron. This was attributed to an increased effect of heterogeneous oxidation for high heating rates and thus to an accelerated heterogeneous oxidation for powders achieved after removal of the natural boron oxide and hydroxide surface layers. Following the ignition, boron continued to react, contributing to the released combustion heat and pressure generated by the flame in both constant-volume explosion and spark ignition tests.
机译:通过机械研磨元素硼和镁粉末来制备结合了硼与40质量%的镁的复合反应材料粉末。用乙腈洗涤市售的硼,以去除表面的氧化硼,氧化硼在研磨过程中会与镁反应。热重测量显示了两个氧化步骤。部分氧化样品的X射线衍射分析表明,在第一步中发生了镁的选择性氧化。第二步是氧化硼。使用电加热的灯丝,电火花和恒定体积的爆炸测试,将制备的复合粉末点燃。镁的选择性氧化引起着火。在加热的灯丝测试中获得的复合粉末的着火温度低于纯镁的着火温度。对于使用洗涤过的硼制备的粉末,观察到由电火花引发的更快。这归因于对于高加热速率的非均相氧化作用的增加,因此归因于去除天然氧化硼和氢氧化硼表面层后粉末的加速非均相氧化。点火后,硼继续反应,在定额爆炸和火花点火试验中,都释放了火焰释放的燃烧热和压力。

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  • 来源
    《Journal of propulsion and power》 |2018年第3期|787-794|共8页
  • 作者单位

    New Jersey Institute of Technology, Newark, New Jersey 07102;

    New Jersey Institute of Technology, Newark, New Jersey 07102;

    New Jersey Institute of Technology, Newark, New Jersey 07102;

    New Jersey Institute of Technology, Newark, New Jersey 07102;

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